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使用单个聚焦换能器诱导和检测声空化事件来确定声空化概率和阈值:I. 方法与术语

Determination of Acoustic Cavitation Probabilities and Thresholds Using a Single Focusing Transducer to Induce and Detect Acoustic Cavitation Events: I. Method and Terminology.

作者信息

Haller Julian, Wilkens Volker, Shaw Adam

机构信息

Physikalisch-Technische Bundesanstalt, Braunschweig, Germany.

Physikalisch-Technische Bundesanstalt, Braunschweig, Germany.

出版信息

Ultrasound Med Biol. 2018 Feb;44(2):377-396. doi: 10.1016/j.ultrasmedbio.2017.08.1946. Epub 2017 Nov 28.

Abstract

A method to determine acoustic cavitation probabilities in tissue-mimicking materials (TMMs) is described that uses a high-intensity focused ultrasound (HIFU) transducer for both inducing and detecting the acoustic cavitation events. The method was evaluated by studying acoustic cavitation probabilities in agar-based TMMs with and without scatterers and for different sonication modes like continuous wave, single pulses (microseconds to milliseconds) and repeated burst signals. Acoustic cavitation thresholds (defined here as the peak rarefactional in situ pressure at which the acoustic cavitation probability reaches 50%) at a frequency of 1.06 MHz were observed between 1.1 MPa (for 1 s of continuous wave sonication) and 4.6 MPa (for 1 s of a repeated burst signal with 25-cycle burst length and 10-ms burst period) in a 3% (by weight) agar phantom without scatterers. The method and its evaluation are described, and general terminology useful for standardizing the description of insonation conditions and comparing results is provided. In the accompanying second part, the presented method is used to systematically study the acoustic cavitation thresholds in the same material for a range of sonication modes.

摘要

描述了一种在组织模拟材料(TMM)中确定声空化概率的方法,该方法使用高强度聚焦超声(HIFU)换能器来诱导和检测声空化事件。通过研究有散射体和无散射体的基于琼脂的TMM中的声空化概率,以及不同的超声处理模式(如连续波、单脉冲(微秒至毫秒)和重复脉冲信号)来评估该方法。在频率为1.06 MHz时,在不含散射体的3%(重量)琼脂模型中,观察到声空化阈值(在此定义为声空化概率达到50%时的峰值稀疏原位压力)在1.1 MPa(连续波超声处理1 s)和4.6 MPa(具有25个周期脉冲长度和10 ms脉冲周期的重复脉冲信号处理1 s)之间。描述了该方法及其评估,并提供了有助于标准化声照射条件描述和比较结果的通用术语。在随附的第二部分中,所提出的方法用于系统地研究同一材料在一系列超声处理模式下的声空化阈值。

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